首页> 外文期刊>Journal of Avian Biology >House sparrow Passer domesticus survival is not associated with MHC-I diversity, but possibly with specific MHC-I alleles
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House sparrow Passer domesticus survival is not associated with MHC-I diversity, but possibly with specific MHC-I alleles

机译:麻雀过客的生存与MHC-1多样性无关,但可能与特定的MHC-1等位基因有关

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The MHC (Major Histocompatibility Complex) plays an important role in the immune system of vertebrates. MHC genes are extremely polymorphic and this variation is considered to be maintained by selection from pathogens. We investigate whether MHC diversity (number of different alleles per individual) affects the survival and recruitment of nestling house sparrows. We hypothesize that individuals with higher MHC diversity can recognize and combat a wider range of pathogens, and therefore are more likely to survive and recruit into the breeding population. Additionally, we hypothesize that specific MHC class I alleles (MHC-I) could be associated with survival and recruitment. We screened MHC-I genotypes in 518 house sparrow chicks hatched on Lundy Island but we found no evidence for a relationship between nestling survival, post-fledging survival or recruitment success with MHC diversity. Then we investigated effects of specific MHC-I alleles in 195 individuals from a single cohort. Twenty-one MHC-I alleles were tested for relationships with nestling survival, post-fledging survival and recruitment, and we detected associations with survival for three different alleles. This pattern was, however, not different to what would be expected from random, so we could not conclude that particular MHC-I alleles are associated with survival in house sparrows on Lundy Island. Nonetheless, one of these alleles (1105) showed both a tendency for a higher probability of surviving in nestlings, and a significant association with survival in fledglings. We envision that allele 1105 could be an interesting candidate gene for testing associations with survival in house sparrows in the future.
机译:MHC(主要组织相容性复合体)在脊椎动物的免疫系统中起重要作用。 MHC基因极其多态,这种变异被认为是通过从病原体中选择而保持的。我们调查MHC多样性(每个个体不同等位基因的数量)是否影响雏鸟麻雀的存活和募集。我们假设具有较高MHC多样性的个体可以识别和抵抗更广泛的病原体,因此更有可能生存并吸收到繁殖种群中。此外,我们假设特定的MHC I类等位基因(MHC-1)可能与生存和募集有关。我们在伦迪岛(Lundy Island)上孵化的518只麻雀雏鸡中筛选了MHC-1基因型,但我们没有发现证据表明雏鸟存活,成年后存活或募集成功与MHC多样性之间存在关联。然后,我们调查了单个队列中195个个体中特定MHC-1等位基因的作用。测试了21个MHC-I等位基因与雏鸟存活,成年后存活和募集的关系,我们检测了三种不同等位基因与存活的关联。但是,这种模式与随机预期的模式没有什么不同,因此我们不能得出结论,特定的MHC-1等位基因与Lundy Island麻雀的存活有关。然而,这些等位基因之一(1105)既显示出在雏鸟中存活的可能性较高的趋势,又与雏鸟的存活率显着相关。我们设想等位基因1105可能是一个有趣的候选基因,用于测试将来与麻雀的存活相关性。

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